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L-氮杂丝氨酸诱导大鼠胰腺发生癌前病变。饮食调控(抗脂肪肝物质缺乏)及超微结构分化的形态计量学研究。

L-azaserine induced preneoplasia in the rat pancreas. A morphometric study of dietary manipulation (lipotrope deficiency) and ultrastructural differentiation.

作者信息

Andry C D, Kupchik H Z, Rogers A E

机构信息

Mallory Institute of Pathology, Boston, Massachusetts 02118.

出版信息

Toxicol Pathol. 1990;18(1 Pt 1):10-7. doi: 10.1177/019262339001800102.

Abstract

Putatively preneoplastic, pancreatic atypical acinar cell foci (AACF) and nodules (AACN), collectively termed atypical acinar cell lesions (AACL), were induced in male Lewis rats by L-azaserine (300 mg/kg body weight [bw] in divided doses). Rats given carcinogen and then fed a lipotrope deficient (LD) diet developed a significantly greater number of larger lesions than animals fed complete diet throughout the experiment. It is suggested that lipotrope deficiency plays a promoting role in this model of pancreatocarcinogenesis. Ultrastructural morphometric studies of AACF, when compared to control tissues, revealed the following significant results: 1) a decrease in surface area of cell cytoplasm with no change in nuclear area, and hence increased nucleus/cytoplasm (N/C) ratio; 2) a reduction in size and uniformity of zymogen granules; and 3) an increase in number of granules per microns 2 of cell. The results suggest that arrested development of the AACF cells is associated with reduced cytoplasm and zymogen production per cell. AACL may be eosinophilic due to an overall increased concentration of zymogen in these hyperplastic lesions and not because individual acinar cells in the AACL contain an increased amount of zymogen or are "zymogen-rich," as has been reported.

摘要

通过给予L-氮丝氨酸(300毫克/千克体重,分剂量给药),在雄性Lewis大鼠中诱导出了假定的癌前胰腺非典型腺泡细胞灶(AACF)和结节(AACN),统称为非典型腺泡细胞病变(AACL)。给予致癌物后再喂食缺乏促脂物质(LD)饮食的大鼠,与在整个实验过程中喂食完全饮食的动物相比,出现的较大病变数量明显更多。这表明促脂物质缺乏在这种胰腺癌发生模型中起促进作用。与对照组织相比,对AACF进行的超微结构形态计量学研究得出了以下显著结果:1)细胞质表面积减少,核面积无变化,因此核/质(N/C)比值增加;2)酶原颗粒的大小和均匀性降低;3)每平方微米细胞内颗粒数量增加。结果表明,AACF细胞的发育停滞与每个细胞的细胞质减少和酶原产生减少有关。AACL可能呈嗜酸性,原因是这些增生性病变中酶原的总体浓度增加,而不是如报道的那样,AACL中的单个腺泡细胞含有增加量的酶原或“富含酶原”。

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